Metallic slit-plate dampers: Damage evaluation with metal magnetic memory technique and application to structures with rocking columns

Inelastic deformation of metallic materials is one of the most effective mechanisms for the dissipation of energy input to a structure by an earthquake. Metallic dampers are special devices that resort to this source of energy dissipation, proving to be a cost-efficient solution for the seismic prot...

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Bibliographic Details
Authors: Abarkane, Chihab, Ríos García, Germán, Galé Lamuela, David, Rescalvo Fernández, Francisco José, Gallego Molina, Antolino, Benavent Climent, Amadeo
Format: article
Publication Date:2019
Country:España
Institution:Consejo General de la Arquitectura Técnica de España (CGATE)
Repository:RIARTE
OAI Identifier:oai:www.riarte.es:20.500.12251/1597
Online Access:http://hdl.handle.net/20.500.12251/1597
https://doi.org/10.3390/met9090953
Access Level:Open access
Keyword:Amortiguador sísmico
Riesgo sísmico
Resistencia mecánica
Terremotos
Estructuras de hormigón armado
Ensayos (propiedades o materiales)
2507.05 Sismología y Prospección Sísmica
3305.31 Mecánica del Suelo (Construcción)
3305.33 Resistencia de Estructuras
3305.05 Tecnología del Hormigón
3305.32 Ingeniería de Estructuras
3312.08 Propiedades de Los Materiales
3312.09 Resistencia de Materiales
3312.12 Ensayo de Materiales
Description
Summary:Inelastic deformation of metallic materials is one of the most effective mechanisms for the dissipation of energy input to a structure by an earthquake. Metallic dampers are special devices that resort to this source of energy dissipation, proving to be a cost-efficient solution for the seismic protection of structures. Two important issues arise when implementing metallic dampers in real structures: (1) Inelastic deformations cause damage that must be quantified after an earthquake to decide upon their eventual replacement; (2) dampers must possess an energy dissipation capacity large enough to endure severe earthquakes. This paper focuses on a particular type of metallic damper consisting of slit-plates made of stainless steel, applied to reinforced concrete frames with rocking columns at the first story. In particular, a new damage index based on the metallic magnetic memory (MMM) method is proposed and validated experimentally to quantify the damage of slit plate dampers subjected to cyclic loadings. Further, the seismic response of a frame with rocking columns that incorporate the damper is obtained to demonstrate that it can endure severe earthquakes without failing, and to emphasize the relevance of the proposed MMM damage index that would make its replacement after a severe earthquake unnecessary.